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Analysis of the intrinsic characteristics of the partial discharge induced by typical defects in GIS

机译:GIS中典型缺陷引起的局部放电的内在特征分析

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Partial discharge (PD) monitoring plays an important role in the maintenance of the high voltage (HV) apparatus, such as transformer and gas-insulated substation (GIS). In recent years, the ultra high frequency (UHF) method for PD detection arouses great interest of many researchers because of its high sensitivity and anti-interference capability. The coupling of UHF signal and process of the signal constitute the UHF detection method. There are three key components for the coupling of UHF signal in GIS, including the frequency spectrum characteristics of the PD source, the propagation characteristics in GIS, the coupling style and the capability of the UHF coupler. Many researchers are interested in the recognition algorithm and the analysis procedure of the PD data. But the intrinsic attributes of the partial discharges should attract more attentions because they are the foundation of the UHF detection method. This paper focuses on the intrinsic characteristics of the typical defects in GIS, such as the amplitude of the time-domain signal and frequency spectrum characteristics. Four types of typical partial discharge sources are designed and fabricated, including floating metal, protrusions, particle on the spacer, and void in solid insulation. Several different structure sizes of each defect are applied to ensure the consistency of the results and discover the factors that affect the frequency spectrum characteristics. The results of the study present the essential characteristics of the partial discharge. It can be applied to the design of the coupler and amplifier circuit. In addition, the sensitivity and anti-interference capability of the UHF method are promoted effectively, and it is valuable for calibrating the intensity of PD in GIS.
机译:局部放电(PD)监控在维护高压(HV)设备(例如变压器和气体绝缘变电站(GIS))中起着重要作用。近年来,用于PD检测的超高频(UHF)方法因其高灵敏度和抗干扰能力而引起了许多研究者的兴趣。 UHF信号的耦合和信号的处理构成了UHF检测方法。 GIS中UHF信号的耦合包括三个主要组成部分,包括PD源的频谱特性,GIS中的传播特性,耦合方式和UHF耦合器的功能。许多研究人员对PD数据的识别算法和分析过程感兴趣。但是,局部放电的内在属性是超高频检测方法的基础,因此应引起更多关注。本文着眼于GIS中典型缺陷的固有特性,例如时域信号的幅度和频谱特性。设计和制造了四种类型的典型局部放电源,包括浮动金属,突起,隔板上的颗粒和固体绝缘体中的空隙。每个缺陷采用几种不同的结构尺寸,以确保结果的一致性并发现影响频谱特性的因素。研究结果显示了局部放电的基本特征。它可以应用于耦合器和放大器电路的设计。另外,有效地提高了UHF方法的灵敏度和抗干扰能力,对于校准GIS中PD的强度具有重要意义。

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